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    <title>GPC 300</title>
      <link>https://deif-staging.jcdhotel.dk/products/gpc-300/</link>
    <atom:link href="https://deif-staging.jcdhotel.dk/product/17644.xml" rel="self" type="application/rss+xml" />
    <description>Paralleling &amp; protection</description>
    <language>en</language>
    <lastBuildDate>Thu, 18 Jun 2026 05:13:19 GMT</lastBuildDate>

        <category domain="product-status">Active</category>
        <deif:key>7b24bcd0-5dcc-4778-81cb-a2c47d176534</deif:key>
        <deif:tagline><![CDATA[Paralleling & protection]]></deif:tagline>
        <deif:teaser><![CDATA[<p><span class="NormalTextRun SpellingErrorV2Themed SCXW42297913 BCX9">Customisable controller for generators, bus tie breakers, and mains connections for land applications.&nbsp;</span>&nbsp;</p>]]></deif:teaser>
        <deif:description><![CDATA[<p><span>The GPC 300 controller is a highly configurable controller that can be customised to many different applications. It contains the functions required to protect and control a diesel generator, mains connection, or bus tie breaker, and their associated breakers.</span>&nbsp;</p>
<p><span>You can reconfigure the onboard software for all of these applications, for example to change a genset controller to a mains connection controller, using the PICUS software utility. This makes the GPC 300 controller a very flexible building block in your power system.</span>&nbsp;</p>
<p><span>If you need extended controller functionality, you can order the GPC 300 controller with a CODESYS PLC environment.&nbsp;</span>&nbsp;</p>
<h2><strong><span>Part of the versatile GPC 300 range</span></strong>&nbsp;</h2>
<p><span>The GPC 300 controller is versatile controller with built-in load sharing and synchronisation features. It can be used for a wide range of marine and offshore applications with an extensive range of protection, supervision, and control functions. The GPC 300 can be used in a power management solution where the power management logic is located elsewhere, and it handles busbar sections with ease. The power management can then either be customer built via CODESYS PLC or via an external PLC</span>&nbsp;</p>
<h2><strong><span>Highly customisable architecture</span></strong>&nbsp;</h2>
<p><span>All GPC 300 variants can be specified with 4 or 7 I/O module slots. The modules provide voltage and current measurement, I/O, engine control, governor and AVR functions, and communication. Three modules are mandatory, but you can use the remaining 1 or 4 slots to customise the controller by adding modules or leave them empty. In addition, you can add up to 9 expansion racks to a single GPC 300 to get up to 58 free module slots (up to 4 in the base rack and up to 6 in each expansion rack).</span>&nbsp;</p>
<h2><span>Unique ANSI 87G differential protection</span>&nbsp;</h2>
<p><span>With the optional ACM3.2 module, you can add ANSI 87G differential protection for generators. The module measures phase currents on the consumer and neutral sides of a generator in order to detect phase-to-phase faults or phase-to-earth faults in earthed generator systems. With this unique feature, you can design reliable and safe power systems without external differential protection devices.</span>&nbsp;</p>
<h2><strong>Read our guide for genset manufacturers and packagers</strong></h2>
<p><iframe src="https://viewer.ipaper.io/deif/publications/oem-genset-application-guide/-/embedded/perspective/spread/1/" style="display: block; width: 300px; height: 300px;" allow="fullscreen" allowfullscreen="allowfullscreen" webkitallowfullscreen="" mozallowfullscreen="" scrolling="no" frameborder="0"></iframe></p>]]></deif:description>
        <deif:modules>
            <deif:module>
              <deif:id>19817</deif:id>
              <deif:guid>0c81b3cd-00c7-4b74-9429-2bc10c289284</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/alternating-current/acm32/</deif:link>
              <deif:teaser><![CDATA[<p>The alternating current module 3.2 measures the phase currents on the consumer side and neutral side of a generator. The ACM3.2 uses the measurements to detect phase-to-phase faults or phase-to-earth faults in earthed generator systems.</p>]]></deif:teaser>
              <deif:description><![CDATA[<p>The alternating current module 3.2 measures the phase currents on the consumer side and neutral side of a generator. The ACM3.2 uses the measurements to detect phase-to-phase faults or phase-to-earth faults in earthed generator systems. The protection consists of:</p>
<ul>
<li>A stabilized stage that uses a dual-slope operating characteristic. This current restraint approach is also known as biased differential protection.</li>
<li>A high set differential stage (non-stabilized).</li>
<li>Protection includes ANSI 87G differential protection for generators</li>
</ul>]]></deif:description>
              <deif:features><![CDATA[<h4>Physical connections</h4>
<ul>
<li>1 × 3-phase current measurement consumer side</li>
<ul>
<li>1 or 5 A AC (nominal)</li>
</ul>
<li>1 × 3-phase current measurement neutral side&nbsp;</li>
<ul>
<li>1 or 5 A AC (nominal)</li>
</ul>
</ul>
<h4>Current measurement characteristics</h4>
<p>The ACM3.2 has two sets of terminals for current measurement.&nbsp;</p>
<ul>
<li>The first set of terminals measures the current at the consumer side of the generator.&nbsp;</li>
</ul>
<ul>
<li>The second set of terminals measures the current at the neutral side of the generator.&nbsp;</li>
</ul>
<ul>
<li>The ACM3.2 uses these measurements for logging, alarms and protective functions relating to differential current protection in the system.</li>
</ul>
<h4>Frequency measurements</h4>
<ul>
<li>Provides robust frequency detection in environments with electrical noise.</li>
</ul>
<h4>Protection</h4>
<ul>
<li>ANSI 87G differential protection for generators</li>
</ul>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19809</deif:id>
              <deif:guid>e7d6a9be-5db8-486f-a84a-2b00bb57a2f3</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/alternating-current/acm31/</deif:link>
              <deif:teaser><![CDATA[<p>The alternating current module measures the voltage and current on one side of a breaker, and the voltage on the other side. The hardware module responds when the measurements exceed the AC alarm parameters.</p>]]></deif:teaser>
              <deif:description><![CDATA[<p>The alternating current module measures the voltage and current on one side of a breaker, and the voltage on the other side. The hardware module responds when the measurements exceed the AC alarm parameters. ACM3.1 uses the AC measurements to check the synchronization before the breaker closes.</p>
<p>ACM3.1 provides robust frequency detection in environments with electrical noise. ACM3.1 allows extended measurement bandwidth up to 40 times the nominal frequency. ACM3.1 includes a configurable 4th current measurement.</p>
<p>Default: ACM3.1 measures 3-phase systems. Optional: Select split-phase (1-phase, 3-wire, for example, L1-N-L2) or single-phase (1-phase, 2-wire, for example, L1-N)</p>]]></deif:description>
              <deif:features><![CDATA[<p>Physical connections</p>
<ul>
<li>2 × 3-phase voltage measurements (L1, L2, L3 and N)</li>
<ul>
<li>100 to 690 V AC phase-to-phase (nominal)</li>
</ul>
<li>1 × 3-phase current measurement and 4th current measurement ((L1, L2, L3 and 4th)</li>
<ul>
<li>1 or 5 A, AC (nominal)</li>
</ul>
</ul>
<p>Voltage measurement characteristics&nbsp;</p>
<ul>
<li>The ACM has two sets of terminals for voltage measurement. The first set of terminals measures the voltage on the busbar. The second set of terminals measures the voltage from the source. The ACM uses these measurements for logging, alarms and protective functions.</li>
</ul>
<p>Current measurement characteristics</p>
<ul>
<li>The ACM measures the current, then uses these measurements for logging, alarms and protective functions.</li>
</ul>
<p>Power measurements</p>
<ul>
<li>For power functions, the second set of voltage measurements and the current measurements from the ACM are used together.</li>
</ul>
<p>Frequency measurements</p>
<ul>
<li>Provides robust frequency detection in environments with electrical noise.</li>
</ul>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19805</deif:id>
              <deif:guid>d9b4c8f7-f1f3-4ec3-87cc-26f35ec445db</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/engine-interface/eim31/</deif:link>
              <deif:teaser><![CDATA[<p>The engine interface module has its own power supply and a tach input to measure speed. It also has four relay outputs, four digital inputs, and three analogue inputs. These I/Os are configurable.</p>]]></deif:teaser>
              <deif:description><![CDATA[<p>The engine interface module has its own power supply and a tach input to measure speed. It also has four relay outputs, four digital inputs, and three analogue inputs. These I/Os are configurable.</p>
<p>The power supply terminals include circuit protection against load dump transients and JEM177 surge transients (rugged design).</p>]]></deif:description>
              <deif:features><![CDATA[<h4>Physical Connections</h4>
<ul>
<li>Supply</li>
<ul>
<li>12 or 24V DC Power supply and frame ground</li>
</ul>
<li>3 x Relay output—Configurable</li>
<ul>
<li>30 V DC, and 6 A</li>
</ul>
<li>1 x Relay output with wire break detection*- configurable</li>
<ul>
<li>30 V DC, and 6 A</li>
</ul>
<li>4 x Digital inputs—configurable (Bipolar</li>
<ul>
<li>ON: -36 to -8 V DC, and 8 to 36 V DC</li>
<li>OFF: -2 to 2 V DC</li>
<li>Voltage withstand: ±36 V DC</li>
</ul>
<li>1 x Magnetic pickup with wire break detection* **</li>
<ul>
<li>3 to 70 V AC peak</li>
<li>2 to 20,000 Hz</li>
<li>Can be useful during start-up, when the generator frequency is too low to be a reliable indication of genset speed&nbsp;</li>
</ul>
<li>1 x Generator tach input or NPN/PNP sensor **</li>
<ul>
<li>8 to 36 V DC</li>
<li>2 to 20,000 Hz</li>
<li>Typically signal from one of the phases of the generator.</li>
<li>Can be useful during start-up, when the generator frequency is too low to be a reliable indication of genset speed&nbsp;</li>
</ul>
<li>3 x Analogue current or resistance measurement inputs (RMI)—configurable</li>
<ul>
<li>Current<span>&nbsp;</span>standard 0 to 20 mA, 4 to 20 mA or configurable 0 to 25 mA</li>
<li>Pt100/1000&nbsp;-40 to 250 °C (-40 to 482 °F)</li>
<li>Resistance<span>&nbsp;</span>Any custom range between 0 and 2.5 kΩ</li>
<li>Digital input<span>&nbsp;</span>Dry contact with cable supervision maximum 330 Ω for ON detection</li>
</ul>
</ul>
<h4>Supply voltage low alarm</h4>
<ul>
<li>The alarm is activated when the power supply voltage is less than the setpoint for the delay time.</li>
</ul>
<h4>Supply voltage high alarm</h4>
<ul>
<li>The alarm is activated when the power supply voltage exceeds the set point for the delay time</li>
</ul>
<h4>Magnetic pickup wire break</h4>
<ul>
<li>This alarm is for magnetic pickup wire break. If the engine is running, but there is no pulse for 2 seconds, then the controller monitors the cable. If there is no change during the alarm delay time, then the controller activates the alarm.</li>
</ul>
<h4>Auxiliary power supply voltage as an analogue output</h4>
<ul>
<li>You can configure an analogue output with a function for the auxiliary power supply voltage. The controller then adjusts the analogue output to reflect the operating value.</li>
<li>An analogue output with the power supply voltage may be wired to a switchboard instrument. The operator can then see if the auxiliary power supply fails.</li>
</ul>
<p>*Note: These inputs cannot both be used at the same time.</p>
<p>**Note You cannot use both the MPU and tach input at the same time</p>
<p>All analogue multi-functional inputs for EIM3.1 have a common ground</p>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19821</deif:id>
              <deif:guid>36eaf14f-a8d5-43d9-ba36-2388c74bf035</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/governor-and-avr/gam32/</deif:link>
              <deif:teaser><![CDATA[<p>This governor and AVR module has its own power supply, two analogue outputs and a pulse width modulation output, five digital inputs, a status relay output, and four relay outputs</p>]]></deif:teaser>
              <deif:description><![CDATA[<p>This governor and AVR module has its own power supply, two analogue outputs and a pulse width modulation output, five digital inputs, a status relay output, and four relay outputs. Apart from the status relay, all these I/Os are configurable. GAM3.2 has its own microprocessor. If the rack power supply fails, GAM3.2 can continue to be used for manual operation if it has its own, independent power supply. The power supply terminals include circuit protection against load dump transients and JEM177 surge transients (rugged design). These terminals also include battery voltage measurement.</p>]]></deif:description>
              <deif:features><![CDATA[<h4>Physical Connections</h4>
<ul>
<li>Supply</li>
<ul>
<li>12 or 24V DC Power supply and frame ground</li>
</ul>
<li>2 x Analogue current or voltage output&nbsp;</li>
<ul>
<li>Active—GOV/AVR/configurable</li>
<li>Current output: any custom range between -25 and 25 mA</li>
<li>Voltage output (DC)-10 to 10 V</li>
</ul>
<li>1 x Pulse width modulation (PWM) output</li>
<ul>
<li>500 Hz ±50 Hz</li>
<li>Voltage: Low level: &lt; 0.5 V. High level: &gt; 5.5 V. Maximum: 6.85 V.</li>
</ul>
<li>5 x Digital inputs—configurable (Bipolar)</li>
<ul>
<li>ON: -36 to -8 V DC, and 8 to 36 V DC</li>
<li>OFF: -2 to 2 V DC</li>
<li>Voltage withstand: ±36 V DC</li>
</ul>
<li>1 x Relay output—GAM3.2 status</li>
<ul>
<li>Solid State</li>
<li>30 V DC and 1 A</li>
</ul>
<li>4 x Relay outputs—configurable</li>
<ul>
<li>30 V DC, and 6 A</li>
</ul>
</ul>
<h4>Supply voltage low alarm</h4>
<ul>
<li>This default alarm is for auxiliary power supply voltage protection.</li>
<li>The alarm is based on the power supply voltage measured by the GAM. The alarm is activated when the power supply voltage is less than the setpoint for the delay time.</li>
</ul>
<h4>Supply voltage high alarm</h4>
<ul>
<li>This default alarm is for auxiliary power supply voltage protection.</li>
<li>The alarm is based on the power supply voltage measured by the GAM. The alarm is activated when the power supply voltage exceeds the set point for the delay time.</li>
</ul>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19811</deif:id>
              <deif:guid>eedcbb74-92d0-48ea-a2fb-bc5fe1cc6baf</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/governor-and-avr/gam31/</deif:link>
              <deif:teaser><![CDATA[<p>This governor and AVR module has four relay outputs, two analogue outputs and a pulse width modulation output, and two analogue inputs.</p>]]></deif:teaser>
              <deif:description><![CDATA[<p>This governor and AVR module has four relay outputs, two analogue outputs and a pulse width modulation output, and two analogue inputs. These I/Os are configurable. GAM3.1 also has terminals for analogue load sharing (future use).</p>]]></deif:description>
              <deif:features><![CDATA[<h4>Physical connections</h4>
<ul>
<li>4 x Relay output—configurable</li>
<ul>
<li>30 V DC, and 6 A</li>
</ul>
<li>1 x Active power (P) (kW) load sharing (future use)</li>
<ul>
<li>-5 to 5 V DC</li>
</ul>
<li>1 x Reactive power (Q) (kVAR) load sharing (future use)&nbsp;</li>
<ul>
<li>-5 to 5 V DC</li>
</ul>
<li>2 x Analogue current or voltage output (analogue current or voltage output)—Active outputs</li>
<ul>
<li>-20 to 20 mA, or 0 to 20 mA, or 4 to 20 mA, or any custom range between -25 and 25 mA</li>
<li>Voltage output (DC)-10 to 10 V, 0 to 10 V, 0 to 5 V, -5 to 5 V, 0 to 3 V, -3 to 3 V, or 0 to 1 V, or any custom range between -10 and 10 V</li>
</ul>
<li>1 x Pulse width modulation (PWM) output</li>
<ul>
<li>500 Hz ±50 Hz</li>
<li>Voltage: Low level: &lt; 0.5 V. High level: &gt; 5.5 V. Maximum: 6.85 V.</li>
</ul>
<li>2 x Analogue current or voltage input configurable (galvanically connected)</li>
<ul>
<li>From active transmitter: 0 to 20 mA, 4 to 20 mA, or any custom range between 0 and 24 mA</li>
<li>Voltage inputs (DC) -10 to 10 V, 0 to 10 V, or any custom range between -10 and 10 V</li>
</ul>
</ul>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19785</deif:id>
              <deif:guid>40ba01dd-7c89-41f1-bbaa-25d199d19049</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/input-output/iom31/</deif:link>
              <deif:teaser><![CDATA[<p>The input/output module has four changeover relay outputs and 10 digital inputs. These I/Os are all configurable.</p>]]></deif:teaser>
              <deif:description><![CDATA[<p>The input/output module has four changeover relay outputs and 10 digital inputs. These I/Os are all configurable.</p>]]></deif:description>
              <deif:features><![CDATA[<h4>Physical connections</h4>
<ul>
<li>4 x Relay outputs—configurable</li>
<ul>
<li>250 V AC or 30 V DC, and 6 A</li>
</ul>
<li>10 x Digital inputs—configurable (Bipolar)</li>
<ul>
<li>ON: -36 to -8 V DC, and 8 to 36 V DC</li>
<li>OFF: -2 to 2 V DC</li>
<li>Voltage withstand: ±36 V DC</li>
</ul>
</ul>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19816</deif:id>
              <deif:guid>fe268532-2a3d-4c2b-97af-c042e93af80a</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/input-output/iom32/</deif:link>
              <deif:teaser><![CDATA[]]></deif:teaser>
              <deif:description><![CDATA[<p>The input output module has four relay outputs, four analogue multifunctional outputs (including two pulse width modulation PWM outputs), four digital inputs, and four analogue multifunctional inputs. These I/Os are all configurable.</p>]]></deif:description>
              <deif:features><![CDATA[<ul>
<li>4 x Solidstate relay outputs – configurable (30 V DC, 6 A, resistive)</li>
<li>2 x Analogue multifunctional output (mA, V DC, PWM)</li>
<li>2 x Analogue multifunctional output (mA, V DC)</li>
<li>4 x Digital input<br>ON: -36 to -8 V DC, and 8 to 36 V DC<br>OFF: -2 to 2 V DC<br>Voltage withstand: ±36 V DC</li>
<li>4 x Analogue multifunctional input (mA, V DC, Resistor (RMI))</li>
</ul>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19799</deif:id>
              <deif:guid>a27e0648-d4ab-4a40-bca3-7101b723acde</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/input-output/iom33/</deif:link>
              <deif:teaser><![CDATA[]]></deif:teaser>
              <deif:description><![CDATA[<p>The input output module has ten analogue multifunctional inputs. These I/Os are all configurable.</p>]]></deif:description>
              <deif:features><![CDATA[<ul>
<li>10 x multifunctional inputs, freely selectable as:</li>
<li>Digital input with wire break</li>
<li>0(4)…20 mA</li>
<li>±10V DC/ 0…10V DC</li>
<li>Resistor input (RMI), 1, 2- or 3-wire</li>
<li>Pt100</li>
<li>Pt1000</li>
<li>Thermocouple, type E, J, K, N, R, S, T selectable&nbsp;&nbsp;&nbsp;&nbsp;</li>
</ul>
<p>For all inputs: Voltage withstand ±36V DC&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;</p>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19822</deif:id>
              <deif:guid>6913261d-e0c5-4fae-80b3-45b8a7a4b880</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/input-output/iom34/</deif:link>
              <deif:teaser><![CDATA[<p>The input/output module has 12 transistor outputs and 16 digital inputs. These I/Os are all configurable.</p>]]></deif:teaser>
              <deif:description><![CDATA[<p>The input/output module has 12 transistor outputs and 16 digital inputs. These I/Os are all configurable.</p>
<p>The controller can use transistor outputs for many purposes. Examples: Activate alarm devices, open and close breakers, and genset speed and voltage regulation.</p>]]></deif:description>
              <deif:features><![CDATA[<h4>Physical connections</h4>
<ul>
<li>Supply</li>
<ul>
<li>Positive supply for transistor terminals (12 or 24 V DC)</li>
</ul>
<li>12 x transistor outputs (Configurable)</li>
<ul>
<li>PNP—Transistor output (&lt; 55 °C: 250 mA; &gt; 55 °C: 200 mA)</li>
</ul>
<li>16 x digital inputs. (Configurable)</li>
<ul>
<li>ON: -36 to -8 V DC, and 8 to 36 V DC</li>
<li>OFF: -2 to 2 V DC</li>
<li>Voltage withstand: ±36 V DC</li>
</ul>
</ul>
<h4>Transistor output characteristics and configuration</h4>
<ul>
<li>All transistor outputs are configurable. You can assign a digital output function, or configure one alarm, for a transistor output. You can program customized transistor output functions using CustomLogic (PICUS software). You can also create customized digital output functions using CustomLogic, and assign a transistor output.</li>
</ul>
<ul>
<li>The transistor hardware itself is normally open. The transistor output state (whether it is open or closed) depends on the configuration in software and the function (or alarm) state.&nbsp;</li>
</ul>
<h4>Digital input characteristics</h4>
<ul>
<li>IOM3.4 has two independent groups of digital inputs with separate common terminals.</li>
</ul>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19793</deif:id>
              <deif:guid>7d76ae16-9f70-4efa-84fa-408fd80f94d1</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/power/psm31/</deif:link>
              <deif:teaser><![CDATA[<p>The PSM3.1 power supply module provides power to all the hardware modules in the primary controller rack containing the main controller.</p>]]></deif:teaser>
              <deif:description><![CDATA[<p>The PSM3.1 power supply module provides power to all the hardware modules in the primary controller rack containing the main controller. The module communicates with extension racks through use of the dedicated DEIF internal communication ports.&nbsp;</p>
<p>The primary controller rack status and alarms activate the PSM's three relay outputs. There are two ports for internal communication with I/O extension units. PSM3.1 manages the hardware module self-checks for the rack and includes a power LED. The power supply terminals include circuit protection against load dump transients and JEM177 surge transients (rugged design). These terminals also include battery voltage measurement.</p>]]></deif:description>
              <deif:features><![CDATA[<h4>Physical connections</h4>
<ul>
<li>Supply</li>
<ul>
<li>12 or 24V DC Power supply and frame ground</li>
</ul>
<li>3 x Relays outputs&nbsp;</li>
<ul>
<li>30V DC, 1A</li>
<li>1 × Status OK (fixed), and 2 × configurable</li>
</ul>
<li>2 x RJ45&nbsp;</li>
<ul>
<li>DEIF internal communications ports&nbsp;</li>
</ul>
</ul>
<h4>Protection</h4>
<ul>
<li>The power supply inputs are internally protected by a 12 A fuse (not replaceable) (fuse size determined by load dump requirements).</li>
</ul>
<h4>Supply voltage low alarm</h4>
<ul>
<li>The alarm is activated when the power supply voltage is less than the setpoint for the delay time.</li>
</ul>
<h4>Supply voltage high alarm</h4>
<ul>
<li>The alarm is activated when the power supply voltage exceeds the set point for the delay time.</li>
</ul>
<h4>Power supply voltage as an analogue output</h4>
<ul>
<li>You can configure an analogue output with a function for the power supply voltage. The controller then adjusts the analogue output to reflect the operating value.</li>
</ul>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19828</deif:id>
              <deif:guid>983ba502-eda5-4099-a679-8c4da578d983</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/power/psm32/</deif:link>
              <deif:teaser><![CDATA[<p>A PSM 3.2 power supply module is installed in each extension rack to provide power to all the hardware modules in the extension rack.</p>]]></deif:teaser>
              <deif:description><![CDATA[<p>A PSM 3.2 power supply module is installed in each extension rack to provide power to all the hardware modules in the extension rack. It communicates with the primary controller rack and other extension racks through the use of the dedicated DEIF internal communication ports.</p>
<p>The extension rack status and alarms activate the PSM's three relay outputs. There are two ports for internal communication with the main controller. PSM3.2 manages the hardware module self-checks for the rack and includes a power LED. The power supply terminals include circuit protection against load dump transients and JEM177 surge transients (rugged design). These terminals also include battery voltage measurement.</p>]]></deif:description>
              <deif:features><![CDATA[<h4>Physical connections</h4>
<ul>
<li>Supply</li>
<ul>
<li>12 or 24V DC Power supply and frame ground</li>
</ul>
<li>3 x Relays outputs&nbsp;</li>
<ul>
<li>30V DC, 1A</li>
<li>1 × Status OK (fixed), and 2 × configurable</li>
</ul>
<li>2 x RJ45&nbsp;</li>
<ul>
<li>DEIF internal communications ports&nbsp;</li>
</ul>
</ul>
<h4>Protection</h4>
<ul>
<li>The power supply inputs are internally protected by a 12 A fuse (not replaceable) (fuse size determined by load dump requirements).</li>
</ul>
<h4>Supply voltage low alarm</h4>
<ul>
<li>The alarm is activated when the power supply voltage is less than the setpoint for the delay time.</li>
</ul>
<h4>Supply voltage high alarm</h4>
<ul>
<li>The alarm is activated when the power supply voltage exceeds the set point for the delay time.</li>
</ul>
<h4>Power supply voltage as an analogue output</h4>
<ul>
<li>You can configure an analogue output with a function for the power supply voltage. The controller then adjusts the analogue output to reflect the operating value.</li>
</ul>]]></deif:features>
            </deif:module>
            <deif:module>
              <deif:id>19798</deif:id>
              <deif:guid>9e133125-ecd6-4d4e-bde3-241993cd91a1</deif:guid>
              <deif:link>https://deif-staging.jcdhotel.dk/products/modules/processor-and-communication/pcm31/</deif:link>
              <deif:teaser><![CDATA[<p>Housed in the primary controller rack, the processor and communication module contains the controller's main microprocessor, which runs the controller application software.</p>]]></deif:teaser>
              <deif:description><![CDATA[<p>Housed in the primary controller rack, the processor and communication module contains the controller's main microprocessor, which runs the controller application software. It includes the Ethernet switch to manage the controller Ethernet connections, with five 100BASE-TX Ethernet connections. It has a Self-check OK LED. It also has two sets of CAN bus terminals and houses the SD card. The PCM3.1 performs time synchronization with an NTP server.</p>]]></deif:description>
              <deif:features><![CDATA[<h4>Physical connections</h4>
<ul>
<li>5 x 100BASE-TX Ethernet</li>
<ul>
<li>Service PC</li>
<li>Display unit</li>
<li>Configurable</li>
<ul>
<li>DEIF network</li>
<li>SCADA</li>
<li>Alarm Monitoring System</li>
<li>Modbus TCP/IP</li>
</ul>
</ul>
<li>2 x CAN bus</li>
<li>1 x SD Card*</li>
</ul>
<h4>Controller temperature too high</h4>
<ul>
<li>This is a built-in alarm for the controller internal temperature, as measured on PCM3.1</li>
</ul>
<h4>PCM3.1 clock battery</h4>
<ul>
<li>PCM3.1 includes an internal battery for timekeeping during a power supply failure. If there is no power supplied to the controller or the PCM module, the controller uses the battery power for its internal clock.</li>
</ul>
<ul>
<li>The PCM clock battery failure alarm is activated when the battery in PCM3.1 needs to be replaced</li>
</ul>
<p>*Note: To meet the temperature and EMC specifications, you must use an industrial grade SD card</p>]]></deif:features>
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            <content:encoded><![CDATA[Removed first table row in section 9.1.1 and changed table numbers to reflect image above. Corrected typo in section 9.2.]]></content:encoded>
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            <content:encoded><![CDATA[Corrected CAN wiring for iE x50 products]]></content:encoded>
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            <title>GPC 300 Designers handbook 4189341168 UK.pdf</title>
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            <content:encoded><![CDATA[Single line change (RevD). July 2023.  ]]></content:encoded>
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            <content:encoded><![CDATA[ New SS and cover. ome updates. Rev D. May 2023.]]></content:encoded>
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            <content:encoded><![CDATA[Minor change (additon of &quot;+&quot; polarity sign to 2 thermocouple wiring diagrams. October 2023.]]></content:encoded>
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<ul>
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<ul>
<li>EIC: Added support of Cummins CM 570 Industrial.</li>
<li>EIC: Added support of Cummins CM 2350 Industrial.</li>
<li>EIC: Added support of Cummins CM 2880 Industrial.</li>
<li>EIC: Added support of Cummins Generic Industrial.</li>
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<ul>
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<ul>
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<li>Fixed an issue that prevented users from configuring the controller and displayed a “Cannot fetch data” error.</li>
<li>Fixed an issue where the indicator component (in View Editor) would not activate with the Alarm Active Status flags.</li>
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